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Resource allocation for coordinated multipoint networks with wireless information and power transfer

机译:具有无线信息和电力传输的协调多点网络的资源分配

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This paper studies the resource allocation algorithm design for multiuser coordinated multipoint (CoMP) networks with simultaneous wireless information and power transfer (SWIPT). In particular, remote radio heads (RRHs) are connected to a central processor (CP) via capacity-limited backhaul links to facilitate CoMP joint transmission. Besides, the CP transfers energy to the RRHs for more efficient network operation. The considered resource allocation algorithm design is formulated as a non-convex optimization problem with a minimum required signal-to-interference-plus-noise ratio (SINR) constraint at multiple information receivers and a minimum required power transfer constraint at the energy harvesting receivers. By optimizing the transmit beamforming vectors at the CP and energy sharing between the CP and the RRHs, we aim at jointly minimizing the total network transmit power and the maximum capacity consumption per backhaul link. The resulting non-convex optimization problem is NP-hard. In light of the intractability of the problem, we reformulate it by replacing the non-convex objective function with its convex hull, which enables the derivation of an efficient iterative resource allocation algorithm. In each iteration, a non-convex optimization problem is solved by semi-definite programming (SDP) relaxation and the proposed iterative algorithm converges to a local optimal solution of the original problem. Simulation results illustrate that our proposed algorithm achieves a close-to-optimal performance and provides a significant reduction in backhaul capacity consumption compared to full cooperation. Besides, the considered CoMP network is shown to provide superior system performance as far as power consumption is concerned compared to a traditional system with multiple antennas co-located.
机译:本文研究了具有同时无线信息和电力传输(SWIPT)的多用户协调多点(COMP)网络的资源分配算法设计。特别地,远程无线电头(RRHS)通过容量有限的回程链路连接到中央处理器(CP),以便于CONCH联合传输。此外,CP将能量传送到RRHS以获得更有效的网络操作。所考虑的资源分配算法设计被配制为具有在多个信息接收器处的最小所需的信号到干扰除噪声比(SINR)约束的非凸优化问题,以及在能量收集接收器处的最小所需功率传输约束。通过优化CP和CP和RRH之间的能量共享的发射波束成形向量,我们的目的旨在共同最小化总网络发射功率和每个回程链路的最大容量消耗。由此产生的非凸优化问题是NP-HARD。鉴于该问题的诡计,通过用凸船用替换非凸面目标函数来重构它,这使得能够推导出高效的迭代资源分配算法。在每次迭代中,通过半定编程(SDP)松弛来解决非凸优化问题,并且所提出的迭代算法会聚到原始问题的本地最佳解决方案。仿真结果表明,与完全合作相比,我们所提出的算法实现了近似最佳性能,并提供了重新回程能力消耗的显着降低。此外,由于与具有多个天线的传统系统相比,所考虑的CoMP网络提供了优异的系统性能,因为与具有多个天线的传统系统相比,涉及具有多个天线的传统系统。

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